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QUantum reservoir cOmputing based on eNgineered DEfect NetworkS in trAnsition meTal dichalcogEnides
Abstract

Today’s computation, based on parallel processing of information, is reaching its physical limitations and novel solutions are to be found in the close future to overcome such major hurdle. This project aims to achieve the first proof-ofconcept of Quantum Reservoir Computing (QRC) scheme based on networks of Quantum Materials (QMs) defects which will enable the fabrication of prototypical computing devices. The engineering of defect network characteristics such as density and defect typology will allow tailoring the defects’ network physical properties, and ultimately its neuromorphic and computing complexity. The project is feasible yet groundbreaking because it capitalizes upon the very different expertises, both experimental and theoretical, comprised within the partners’ consortium, all of which are required to implement a novel QRC scheme. As such, this project will result in unprecedented characteristics that extend the conventional boundaries of ICT electronic devices and systems and pave the way for the development of novel Quantum Technologies.

Project information
Acronym
QUONDENSATE
Start date
01/04/2024
End date
31/03/2028
Role
Partner
Funds
European
People involved
Camilla Coletti
Camilla Coletti
2D Materials Engineering
Budget
Total budget: 460.303,75€
Total contribution: 460.303,34€